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Graphene Science Handbook

Size-Dependent Properties

Edited by: Mahmood Aliofkhazraei , Nasar Ali , William I. Milne , Cengiz S. Ozkan , Stanislaw Mitura , Juana L. Gervasoni

Print publication date:  April  2016
Online publication date:  April  2016

Print ISBN: 9781466591356
eBook ISBN: 9781466591363
Adobe ISBN:

10.1201/b19460
 Cite  Marc Record

Book description

Size Up the Short- and Long-Term Effects of Graphene

The Graphene Science Handbook is a six-volume set that describes graphene?s special structural, electrical, and chemical properties. The book considers how these properties can be used in different applications (including the development of batteries, fuel cells, photovoltaic cells, and supercapacitors based on graphene) and produced on a massive and global scale.

Volume One: Fabrication Methods

Volume Two: Nanostructure and Atomic Arrangement

Volume Three: Electrical and Optical Properties

Volume Four: Mechanical and Chemical Properties

Volume Five: Size-Dependent Properties

Volume Six: Applications and Industrialization

This handbook describes the fabrication methods of graphene; the nanostructure and atomic arrangement of graphene; graphene?s electrical and optical properties; the mechanical and chemical properties of graphene; the size effects in graphene, characterization, and applications based on size-affected properties; and the application and industrialization of graphene.

Volume five is dedicated to size effects in graphene, characterization, and applications based on size-affected properties and covers:

  • The use of graphene as a tunnel barrier for both charge and spin transport
  • The mechanical behavior of Kevlar?graphene fibers
  • Size-controlled graphene and cases of graphene nanostructures with size-dependent properties
  • The applications of graphene as adsorbents, supporting and hybridization materials, and catalysts for removal of pollutants in contaminated water and air
  • Recent research efforts to synthesize a variety of graphene-based structures
  • The properties of indirect coupling between magnetic moments in monolayer graphene nanostructures
  • The recent results of the electronic properties of graphene/metal systems
  • Interface traps in graphene field-effect devices
  • Semi-analytical models for the calculation of the quantum capacitance of both monolayer and bilayer graphene and its nanoribbons
  • The various properties of mono- and multilayers of silicene compared with the corresponding properties of graphene
  • The most relevant data obtained in the field of the vibrational characterization of graphene and graphene-based materials and more

Table of contents

Chapter  1:  Graphene as a Spin-Polarized Tunnel Barrier Download PDF
Chapter  2:  Modeling and Simulation of the Elastic Properties of Kevlar Reinforced by Graphene Download PDF
Chapter  3:  Size Control Methods and Size-Dependent Properties of Graphene Download PDF
Chapter  4:  Adsorption and Catalysis of Graphene in Environmental Remediation Download PDF
Chapter  5:  Graphene Oxide-Derived Porous Materials for Hydrogen/Methane Storage and Carbon Capture Download PDF
Chapter  6:  Indirect Coupling between Localized Magnetic Moments in Graphene Nanostructures Download PDF
Chapter  7:  A Many-Body Overview of Excitonic Effects in Armchair Graphene Nanoribbons Download PDF
Chapter  8:  Electronic Properties of Graphene Epitaxially Grown on Metal Substrates Characterized by Synchrotron-Based Spectroscopies Download PDF
Chapter  9:  Graphene Field-Effect Transistor Chemical/Biological Sensors Download PDF
Chapter  10:  An Interesting Overview about Diffusion in Graphene Download PDF
Chapter  11:  Interface Traps in Graphene Field-Effect Devices Extraction Methods and Influence on Characteristics Download PDF
Chapter  12:  Magnetic Properties of Nanographene Bilayer Download PDF
Chapter  13:  Quantum Capacitance of Graphene Sheets and Nanoribbons Download PDF
Chapter  14:  Functionalization and Properties of Graphene Download PDF
Chapter  15:  Properties of Two-Dimensional Silicon versus Carbon Systems Download PDF
Chapter  16:  Raman and FTIR Spectroscopy as Valuable Tools for the Characterization of Graphene-Based Materials Download PDF
Chapter  17:  Investigation on Mechanical Behavior of Single-Layer Graphene with Grain Boundary Loops Download PDF
Chapter  18:  Characterization of Pristine and Functionalized Graphene on Metal Surfaces by Electron Spectroscopy Download PDF
Chapter  19:  Nanographene Patterns from Focused Ion Beam-Induced Deposition Structural Characterization of Graphene Materials by XPS and Raman Scattering Download PDF
Chapter  20:  Thermophysical and Electrophysical Properties of Composite Films Based on Modified Multi-Walled Carbon Nanotubes and Multilayered Graphene Download PDF
Chapter  21:  Graphene Gas Sensor Single-Molecule Gas Detection Download PDF
Chapter  22:  Graphene-Based Semiconductor Materials for Photocatalytic Applications Download PDF
Chapter  23:  Fundamentals of Electronic Modification of Graphene by Si and H Download PDF
Chapter  24:  Applications of Graphene in Semiconductor Devices as Transparent Contact Layers, Diffusion Barriers, and Thermal Management Layers Download PDF
Chapter  25:  Application of Graphene and Graphene Oxide in Dye-Sensitized Solar Cells Download PDF
Chapter  26:  Graphene and Its Diverse Applications in Healthcare Systems Download PDF
Chapter  27:  Advances in Graphene RF Transistors and Applications Download PDF
Chapter  28:  Graphene Transistors Silicon CMOS-Compatible Processing for Applications in Nanoelectronics Download PDF
Chapter  29:  Graphene Nanocomposites for Lithium Battery Application Download PDF
Chapter  30:  Improving Corrosion Resistance via Graphene Nanocomposite Coatings Download PDF
Chapter  31:  Graphene-Based Electrochemical Capacitors Download PDF
prelims Download PDF
Index Download PDF
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